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A Study on AIN Film-Based SAW Attenuation in Liquids and Their Potential as Liquid Ethanol Sensors

机译:基于AIN膜的液体中声表面波衰减的研究及其作为液体乙醇传感器的潜力

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摘要

In this paper, we report attenuation characteristics of aluminum nitride (AIN) film-based surface acoustic waves (SAWs) in liquids and their potential as liquid ethanol sensors. An AIN film-based SAW resonator was fabricated for liquid sensing application. The fabricated SAW device had a Rayleigh wave mode at a resonant frequency of 147.1 MHz and a low temperature coefficient of frequency (TCF) of −21.7 ppm/K. The signal attenuation in the transmission line of the SAW device was presented when ethanol (ETH) droplets and deionized water (DIW) with different concentrations and volume (0.2–1 µL) were dropped on the sensing area respectively. The attenuation of SAW as a function of time and liquid position was investigated. Residues left on the wave propagation path resulted in a frequency shift of the SAW device after liquid evaporation. For ETH, there was a 49 kHz frequency shift caused by a large amount of residues, while the frequency shift of DIW was not distinct, on account of a clean surface. The linear relationship between evaporation rate and ethanol concentration was demonstrated. The evaporation rate of ethanol droplets showed good consistency, and the evaporation time variation was less than 5% at each concentration level. Therefore, the proposed SAW device had great potentials to determine ethanol concentrations based on evaporation rate.
机译:在本文中,我们报告了液体中基于氮化铝(AIN)膜的表面声波(SAW)的衰减特性及其作为液体乙醇传感器的潜力。制造了基于AIN膜的SAW谐振器,用于液体传感应用。所制造的SAW器件在共振频率为147.1MHz时具有瑞利波模式,并且频率的低温温度系数(TCF)为-21.7ppm / K。当分别将不同浓度和体积(0.2-1 µL)的乙醇(ETH)液滴和去离子水(DIW)分别滴在传感区域上时,SAW设备的传输线中的信号衰减就会出现。研究了声表面波衰减随时间和液体位置的变化。残留在波传播路径上的残留物导致液体蒸发后SAW器件的频移。对于ETH,由于表面清洁,存在大量残留物导致49 kHz频移,而DIW的频移并不明显。证明了蒸发速率与乙醇浓度之间的线性关系。乙醇液滴的蒸发速率显示出良好的一致性,并且在每个浓度水平下,蒸发时间变化均小于5%。因此,所提出的SAW装置具有基于蒸发速率确定乙醇浓度的巨大潜力。

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